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Biomechanics of a posture-controlling cervical artificial disc: mechanical, in vitro, and finite-element analysis

机译:姿势控制颈椎人工光盘的生物力学:机械,体外和有限元分析

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Different methods have been described by numerous investigators for experimentally assessing the kinematics of cervical artificial discs. However, in addition to understanding how artificial discs affect range of motion, it is also clinically relevant to understand how artificial discs affect segmental posture. The purpose of this paper is to describe novel considerations and methods for experimentally assessing cervical spine postural control in the laboratory. These methods, which include mechanical testing, cadaveric testing, and computer modeling studies, are applied in comparing postural biomechanics of a novel postural control arthroplasty (PCA) device versus standard ball-and-socket (BS) and ball-in-trough (BT) arthroplasty devices. The overall body of evidence from this group of tests supports the conclusion that the PCA device does control posture to a particular lordotic position, whereas BS and BT devices move freely through their ranges of motion.
机译:许多研究人员已经描述了不同的方法,用于通过实验评估宫颈人造盘的运动学。然而,除了了解人造光盘如何影响运动范围之外,还有临床相关,以了解人造光盘如何影响节段姿势。本文的目的是描述实验评估实验室宫颈脊柱姿势控制的新型考虑因素和方法。这些方法包括机械测试,尸体检测和计算机建模研究,用于比较新型姿势控制关节造身术(PCA)装置与标准球和插座(BS)和球槽(BT)的姿势生物力学)关节成形术设备。来自这群测试的证据总体支持PCA设备确实控制姿势对特定的主位置,而BS和BT器件通过其运动范围自由移动。

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